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Matrix metalloproteinase inhibitory properties of benzalkonium chloride stabilizes adhesive interfaces

机译:苯扎氯铵的基质金属蛋白酶抑制特性可稳定粘合剂界面

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This study evaluated the effects of different concentrations of benzalkonium chloride (BAC) on the preservation of adhesive interfaces created with two etch-and-rinse adhesives and its inhibitory properties on dentin matrix metalloproteinase (MMP) activity. The following groups were tested with the adhesive systems Optibond Solo Plus and All-Bond 3: Group 1, adhesive without inhibitor (control); Group 2, topical 2.0% chlorhexidine (2.0% CHX); Group 3, phosphoric acid with 1.0%wt BAC (BAC-PA); Group 4, 0.25% BAC-adhesive (0.25% BAC); Group 5, 0.5% BAC-adhesive (0.5% BAC); Group 6, 1.0% BAC-adhesive (1.0% BAC); and Group 7, 2.0% BAC-adhesive (2.0% BAC). Composite cylinders were fabricated, and shear bond strength (SBS) was evaluated after 24 h, 6 months, and 18 months of storage. Extracts from concentrated demineralized human dentin powder were subjected to SDS-PAGE and incubated in the presence of 0.25, 0.5, 1.0, and 2.0% BAC. Overall, stable bonds were maintained for 18 months. Improved bond strengths were seen for 0.5% BAC and 1.0% BAC when bonding with Optibond Solo Plus, and for 0.25% BAC and 0.5% BAC when bonding with All-Bond 3. Zymographic analysis revealed complete inhibition of gelatinolytic activity with BAC. Benzalkonium chloride, at all concentrations, inhibited dentin proteolytic activity, which seems to have contributed to the improved bond stability after 18 months for specific combinations of BAC concentration and adhesive.
机译:这项研究评估了不同浓度的苯扎氯铵(BAC)对使用两种蚀刻和冲洗粘合剂产生的粘合剂界面的保存及其对牙本质基质金属蛋白酶(MMP)活性的抑制作用的影响。下列各组用粘合剂系统Optibond Solo Plus和All-Bond 3:第1组,无抑制剂的粘合剂(对照)进行了测试;第2组,局部用2.0%洗必太(2.0%CHX);第3组,磷酸和1.0%(重量)BAC(BAC-PA);第4组,0.25%BAC粘合剂(0.25%BAC);第5组,0.5%BAC粘合剂(0.5%BAC);第6组,1.0%BAC粘合剂(1.0%BAC);和第7组,2.0%BAC粘合剂(2.0%BAC)。制造了复合材料圆柱体,并在储存24小时,6个月和18个月后评估了剪切粘结强度(SBS)。将浓缩的脱矿质人牙本质粉末的提取物进行SDS-PAGE,并在0.25%,0.5%,1.0%和2.0%BAC的存在下孵育。总体而言,稳定的债券维持了18个月。当与Optibond Solo Plus结合时,结合强度提高了0.5%BAC和1.0%BAC,当与All-Bond 3结合时结合了0.25%BAC和0.5%BAC时,Zygraph分析显示,BAC完全抑制了明胶分解活性。在所有浓度下,苯扎氯铵均抑制牙本质蛋白水解活性,这对于BAC浓度和粘合剂的特定组合在18个月后似乎有助于改善粘合稳定性。

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